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MT10 Linear Image Barcode Scan Engine, Integration Guide, V1.6 MT10 MT10 (3.3V (3.3V Linear Linear Image Image Barcode Barcode Scan Scan Engine) Engine) Integration Integration Guide Guide Version 1.6 DATE: 2018/3/15

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Page 1: MT10 Linear Image Barcode Scan Engine, Integration · PDF fileScanRate 650Scans/sec ... PrintContrastRatio 30% WidthofField 140mm(13MilCode39) DepthOfField (Environment:800lux)

MT10 Linear Image Barcode Scan Engine, Integration Guide, V1.6

MT10MT10

(3.3V(3.3V LinearLinear ImageImage BarcodeBarcode ScanScan Engine)Engine)

IntegrationIntegration GuideGuide

Version 1.6 DATE: 2018/3/15

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MT10 Linear Image Barcode Scan Engine, Integration Guide, V1.6

TABLE OF CONTENTS1.1. INTRODUCTIONINTRODUCTION.....................................................................................................11

1-1.1-1. MT10MT10 BlockBlock DiagramDiagram................................................................................ 11

1-2.1-2. ElectricElectric InterfaceInterface........................................................................................22

1-2-1.1-2-1. PinPin AssignmentAssignment.............................................................................. 22

1-2-2.1-2-2. ElectricElectric CharacteristicsCharacteristics................................................................55

1-2-3.1-2-3. FlexFlex CableCable........................................................................................ 55

1-3.1-3. OperationalOperational TimingTiming................................................................................... 66

1-3-1.1-3-1. PowerPower UpUp..........................................................................................66

1-3-2.1-3-2. SleepSleep (Idle)(Idle) ModeMode........................................................................... 66

1-3-3.1-3-3. DecodeDecode TimingTiming................................................................................66

1-3-4.1-3-4. SummarySummary ofof OperationOperation TimingsTimings.................................................77

2.2. SPECIFICATIONSSPECIFICATIONS.................................................................................................. 77

2-1.2-1. IntroductionIntroduction................................................................................................ 77

2-2.2-2. TechnicalTechnical SpecificationsSpecifications......................................................................... 77

2-3.2-3. InterfaceInterface....................................................................................................... 99

2-3-1.2-3-1. UARTUART InterfaceInterface............................................................................... 99

2-3-2.2-3-2. USBUSB InterfaceInterface................................................................................1010

2-4.2-4. OperationOperation MethodMethod....................................................................................1111

2-5.2-5. MechanicalMechanical DimensionDimension...........................................................................1111

2-6.2-6. ScanningScanning RangeRange...................................................................................... 1212

2-7.2-7. PitchPitch Angle,Angle, RollRoll AngleAngle andand SkewSkew AngleAngle.......................................... 1313

2-8.2-8. SpecularSpecular DeadDead ZoneZone............................................................................... 1414

2-9.2-9. CurvatureCurvature DegreeDegree....................................................................................1515

2-10.2-10. FlexFlex CableCable SpecificationSpecification..................................................................... 1515

2-11.2-11. ConnectorConnector SpecificationSpecification......................................................................1616

3.3. INSTALLATIONINSTALLATION.................................................................................................... 1717

3-1.3-1. ElectrostaticElectrostatic DischargeDischarge CautionsCautions.......................................................1717

3-2.3-2. MechanicalMechanical DimensionDimension.......................................................................... 1717

3-3.3-3. WindowWindow MaterialsMaterials....................................................................................1818

3-4.3-4. WindowWindow SpecificationsSpecifications.......................................................................... 1919

3-5.3-5. WindowWindow CareCare............................................................................................ 2121

4.4. REGULATIONSREGULATIONS.................................................................................................... 2121

5.5. DEVELOPMENTDEVELOPMENT KITKIT........................................................................................... 2222

6.6. SLEEPSLEEP (IDLE)(IDLE) MODEMODE.......................................................................................... 2323

7.7. PARAMETERPARAMETER SETUPSETUP..........................................................................................2424

8.8. VERSIONVERSION HISTORYHISTORY............................................................................................ 2525

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MT10 Linear Image Scan Engine, Integration Guide, V1.6

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1.1. INTRODUCTIONINTRODUCTIONThe MT10 Linear Image Barcode Scan Engine is designed for 1D barcode middle

range reading, and high performance barcode scanning with optimal performance and

easy integration. MT10 is ideal for integration into data terminals and other small

mobile devices.

The MT10 consists of 2 illumination LEDs, a high-quality linear image sensor and a

microprocessor that contains powerful firmware to control all aspects of operations

and enable communication with the host system over the standard set of

communication interfaces.

Two interfaces, UART & USB, are available. UART interface communicates with the

host system over TTL-level RS232 communication; USB interface emulates a USB

Keyboard device and communicates with the host system over USB.

1-11-1.. MT10MT10 BlockBlock DiagramDiagram

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1-1-22.. ElectricElectric InterfaceInterface

1-2-1.1-2-1. PinPin AssignmentAssignment

(Back View of MT10)

Pin# UART USB I/O Description Schematic Example

1 VCC VCC ------------ Supply voltage input.

Must always be

connected to a 3.3V

power supply.

+3V3

2 GND GND ------------ Power and signal

ground.

3 RXD ------------ Input UART TTL data input.

Sipex® Vendor P/N: SP232ACT

4 TXD ------------ Output UART TTL data output.

Sipex® Vendor P/N: SP232ACT

Pin13Pin1

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Pin# UART USB I/O Description Schematic Example

5 CTS Input When handshaking is

enabled, host

authorizes MT10 to

transmit data on TXD

line.

Sipex® Vendor P/N: SP232ACT

USB D+ Bidirectional Differential Signal

Transmission

------------------------------------------

6 RTS Output When handshaking is

enabled, MT10

requests permission

from host to transmit

data on TXD line.

Sipex® Vendor P/N: SP232ACT

USB D- Bidirectional Differential Signal

Transmission

------------------------------------------

7 Power

down

Power

down

Output Active high, it indicates

that the MT10 is in

Sleep Mode (See

Chapter 6 for details)

------------------------------------------

8 Buzzer Buzzer Output Active high: Power-Up

or a successful

barcode decoded.

PWM controlled signal

can be used to drive an

external buzzer for a

successful barcode

decoded (Good Read).

R3

10R

Buzzer

Q12N3904

Q22N3904

R6 2K7

R7 6K8

R8

3K3

BZ BZ1

BZ_2.7K

21

HD1

1N 4148

12

+ C810uF

+

-

VCC

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Pin# UART USB I/O Description Schematic Example

9 LED LED Output Active high, it indicates

the status of Power-Up

or a successful

barcode decoded

(Good Read).

LED1GREEN

12

Q42N3904

R11330R

R13 4K7Decode LED

VCC

10 Boot 0 Boot 0 Input Reserved for

production only.

------------------------------------------

11 Trigger Trigger Input High: Power-up/Standby

Low: Scanning Operation

*Note:

1. Scanning operation

continues until a barcode

is successfully decoded

or the trigger is released

(pull high). To proceed to

the next scanning

operation, release (pull

high) first and press (pull

low) the trigger again.

2. Pull low at power-up

will prompt the scan

engine into firmware

update mode.

12 Reset Reset Input Reserved for

production only.

------------------------------------------

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1-2-2.1-2-2. ElectricElectric CharacteristicsCharacteristics

Symbol Ratings Min Max Unit

VIH Input high level 2.0 3.6 V

VIL Input low level 0 1.1 V

VOH Output high level 2.9 V

VOL Output low level 0.4 V

|△VDDx|Variations between different VDD

power pins50 mV

*Note:

1. Power Supply: VDD=3.3

2. Exposure to maximum rating conditions for extended periods may affect device reliability.

1-2-1-2-33.. FlexFlex CableCable

The flex cable is used to connect MT10 to the host side. There are 13

pins on the MT10 (engine) side and 12 pins on the host side. Please

see 2-10 for more details of flex cable.

Flex cable(P/N: 6351-0501113)

Pin# Pin Assignment To Host

1 VCC

2 GND

3 RXD

4 TXD

5 USB D+ / CTS

6 USB D- / RTS

7 Power Down

8 Buzzer

9 LED

10 Boot0

11 Trigger

12 Reset

*Note: Conforms to MARSON MT700/MT710D’s pin assignment.

1 12 12 1

(contact)

(contact)

Host

Engine

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1-3.1-3. OperationalOperational TimingTiming

This chapter describes the timing associated with the various operating modes of

the MT10 including Power Up, Sleep Mode, and Decode Timing.

1-3-1-3-11.. PowerPower UpUp

When power is initially applied, the MT10 is activated and begins the

process of initialization. Once initialization (duration ≦ 10mS) is

completed, the MT10 enters Standby Mode and is ready for barcode

scanning.

1-3-1-3-22.. SleepSleep (Idle)(Idle) ModeMode

The MT10 will enter Sleep (Idle) Mode and output a Power Down signal

(Active high) after a programmable time period has elapsed without any

activity. Please see Chapter 6 for more details about Sleep Mode.

1-3-1-3-33.. DecodeDecode TimingTiming

In Standby Mode, The MT10 is activated by the Trigger signal which MUST

be kept low for at least 20 ms until the successful scan is achieved, as

indicated by the Buzzer/LED signals.

In Sleep Mode, the MT10 can be waken up by the Trigger signal which

MUST be kept low for at least 20 mS until the successful scan is achieved,

as indicated by the Buzzer/LED signal.

The total scan and decode time is approximately equal to the time from the

Trigger signal going low to the Buzzer/LED signal going high. This time will

vary slightly based on several factors including barcode quality, barcode

type and the distance between MT10 and the barcode scanned.

Upon a successful scan, the MT10 outputs the Buzzer/LED signal and

keeps this signal for the duration of the transmission of the data decoded to

the host side. The duration is about 75 ms.

Therefore, the total duration of a typical scanning operation (from Trigger

turning low to the end of Buzzer PWM signal) is also approximately 120mS.

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1-3-1-3-44.. SummarySummary ofof OperationOperation TimingsTimings

1. The maximum duration of initialization is 10mS.

2. The maximum duration of scanning operation in Standby Mode is 120mS.

3. The minimum duration of waking up MT10 from Sleep Mode by

Trigger signal is about 2 ms.

4. The maximum duration of waking up MT10 from Sleep Mode by Trigger

signal and completing decode (when barcode is within optimal focus) is

about 120ms

2.2. SPECIFICATIONSSPECIFICATIONS

2-1.2-1. IntroductionIntroduction

This chapter provides technical specifications of the MT10 scan engine.

Operating method, scanning range and scan angle are also presented.

2-2.2-2. TechnicalTechnical SpecificationsSpecifications

Optic & Performance

Light Source 625nm visible red LED

Sensor Linear Image Sensor

Scan Rate 650 Scans/ sec

Resolution 4mil/ 0.1mm

Scan Angle 41°

Print Contrast Ratio 30%

Width of Field 140mm (13Mil Code39)

Depth Of Field

(Environment: 800 lux)

4 Mil Code39: 45 ~ 70mm (4 digits)

5 Mil Code39: 40 ~ 95mm (4 digits)

10 Mil Code39: 35 ~ 195mm (4 digits)

15 Mil Code39: 45 ~ 275mm (4 digits)

13 Mil UPC/ EAN: 40 ~ 230mm (13 digits)

Physical Characteristics

Dimension W14 x L11.9 x H7 mm

Weight 1g

Color Black

Material PC

Cable 13pin to 12pin flex cable

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Electrical

Operation Voltage 3.3VDC±0.15VDC

Working Current < 75mA (UART) ; < 85mA (USB)

Standby Current < 35mA (UART) ; < 45mA (USB)

Idle Current

(Sleep Mode)< 300uA (UART) ; < 500uA (USB)

Surge Current < 500 mA

Connectivity

InterfaceUART (TTL-level RS232)

USB (HID Keyboard)

User Environment

Operating Temperature 0°C ~ 50°C

Storage Temperature -20°C ~ 60°C

Humidity 0% ~ 95%RH (Non-condensing)

Drop Durability 1.5M ()

Ambient Light 100,000 Lux (Sunlight)

Symbologies

UPC-A/ UPC-E

EAN-8/ EAN-13

Matrix 2 of 5

China Postal Code (Toshiba Code)

Industrial 2 of 5

Interleaved 2 of 5

Standard 2 of 5 (IATA Code)

Codabar

Code 11

Code 32

Standard Code 39

Full ASCII Code 39

Code 93

Code 128

EAN/ UCC 128

MSI Plessey Code

UK Plessey Code

Telepen Code

GS1 Databar

Regulatory

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ESDFunctional after 4KV contact, 8KV air discharge(it requires housing that is designed for ESDprotection and stray from electric fields.)

EMCFCC – Part15 Subpart B (Class B)

CE – EN55022, EN55024

Safety Approval IEC 62471 (Exempt Group)

Environmental WEEE, RoHS 2.0

2-2-33.. InterfaceInterface

2-3-1.2-3-1. UARTUART InterfaceInterface

Below default values of communication parameters apply to both

Standard mode and Command mode firmware.

Baud rate: 9600

Data Bits: 8

Parity: None

Stop Bit: 1

Handshaking: None

Flow Control Timeout: None

ACK/NAK: OFF

BCC: OFF

A. Standard Mode

Firmware version: SM3-d-x.xx (MT10 P/N: 110P-A000000)

Characteristics:

(1) Configurable by scanning configuration barcodes or

Ez Utility® (a PC-based software utility, available for download at

www.marson.com.tw)

(2) Supports hardware trigger only

Interface Configuration Barcode:

UART

Scanning above barcode will set your MT10 to UART interface.

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B. Command Mode

Firmware version: SM3-d-x.xx.CMD (MT10 P/N: 110P-4000000)

Characteristics:

(1) Configurable by commands sent from host or

BEO® (a PC-based software utility, available for download at

www.marson.com.tw)

(2) Supports both hardware and software triggers

Interface Configuration Barcode:

Not supported.

2-3-2.2-3-2. USBUSB InterfaceInterface

Firmware version: SM3-d-x.xx (MT10 P/N: 110P-A000000)

Characteristics:

(1) Configurable by scanning configuration barcodes or

Ez Utility® (a PC-based software utility, available for download at

www.marson.com.tw)

(2) Supports hardware trigger only

(3) Emulates a USB Keyboard device

Interface Configuration Barcode:

USB HID

Scanning above barcode will set your MT10 to USB interface.

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22--4.4. OperatOperationion MethodMethod

1. At power-up, the MT10 sends the Power-Up signals over Buzzer and LED

pins as an indication that the MT10 enters into Standby Mode and is ready

for operation.

2. Once the MT10 triggered by either hardware or software method, it will emit a

narrow, horizontal slab of light which is aligned with the sensor’s field of view.

3. The linear image sensor captures the linear image of barcode and produces

an analog waveform, which is sampled and analyzed by the decoder

firmware running on the MT10.

4. Upon a successful barcode decoded, the MT10 turns off the illumination

LEDs, sends the Good Read signals over Buzzer and LED pins and transmits

the decoded data to the host.

5. The MT10 may enter into Sleep Mode (Please see Chapter 6 for more

details) after a period of inactivity in order to reduce power consumption.

2-2-55.. MechanicalMechanical DimensionDimension

Front View Side View

Top View

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2-2-66.. SScanningcanning RRangeange

Test Condition:Barcode Length: Code39 – 4 characters

EAN/UPC – 13 charactersBar & Space Ratio: 1 to 2.5Ambient Light: > 500 lux

Minimum & Maximum Scan DistanceSymbology Resolution Distance No. of Encoded Characters

StandardCode 39

(w/o checksum)

4 Mil 45 ~ 70 mm

4 char.5 Mil 35 ~ 95 mm

10 Mil 35 ~ 195 mm

15 Mil 45 ~ 275 mm

EAN 13 13 Mil 40 ~ 230 mm 13 char.

Maximum Scan Width

Symbology Resolution Barcode Length No. of Encoded Characters

StandardCode 39

(w/o checksum)13 mil 140 mm 27 char.

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22--7.7. PPitchitch AAngle,ngle, RollRoll AAnglengle andand SkewSkew AAnglengle

Be aware of the tolerance for the pitch, roll and skew angle of bar code you are

trying to scan.

Pitch Angle: ± 30° Roll Angle: ± 20°

Skew Angle: ± 40°

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22--8.8. SpecularSpecular DeadDead ZoneZone

Do not place the MT10 directly over the barcode. The light reflecting directly

back into the MT10 from the barcode is known as specular reflection, which can make

decoding difficult. The specular dead zone of MT10 is up to 5° depending on target

distance and substrate glossiness.

Specular Dead Zone: ± 5°

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22--9.9. CurvatureCurvature DegreeDegree

The curvature degree of a scanned barcode is specified as below:

22--10.10. FlexFlex CCableable SpecificationSpecification

Below is the drawing of the flat cable(P/N: 6351-0501113) that comes with MT10.

Barcode Code 39 (L=32 mm) Code 39 (L=43 mm)

Resolution 13 mil (0.33 mm) 20 mil (0.51 mm)

R R ≧ 15 mm R ≧ 20 mm

d 40 mm

PCS 0.9 (printed on photographic paper)

Bottom ViewTop View

Top View

Bottom View

(Stiffener)

(Contact)

(Contact)

(Stiffener)

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22--11.11. ConnectorConnector SpecificationSpecification

12-pin Molex® FPC Connector (Molex P/N: 54548-1229), to be installed on Host

side.

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33.. INSTALLATIONINSTALLATIONThe MT10 scan engine is designed specifically for integration into customer's housing

for OEM applications. However, the MT10’s performance will be adversely affected or

permanently damaged when mounted into an unsuitable enclosure.

Warning: The limited warranty is void if the following recommendations are not

adhered to when mounting the MT10.

3-1.3-1. ElectrostaticElectrostatic DiDischargescharge CautionsCautions

All MT10s are shipped in ESD protective packaging due to the sensitive nature of

the exposed electrical components.

1. ALWAYS use grounding wrist straps and a grounded work area when

unpacking and handling the MT10.

2. Mount the MT10 in a housing that is designed for ESD protection and stray

electric fields.

3-2.3-2. MechanicalMechanical DimensionDimension

When securing the MT10 by utilizing the self-forming screws:

1. Leave sufficient space to accommodate the maximum size of the MT10.

2. Do not exceed 1kg-cm (0.86 lb-in) of torque when securing the MT10 to the

host.

3. Use safe ESD practices when handling and mounting the MT10.

Front View Side View

Top View

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3-33-3.. WindowWindow MaterialMaterialss

Following are descriptions of three popular window materials:

1. Poly-methyl Methacrylic (PMMA)

2. Allyl Diglycol Carbonate (ADC)

3. Chemically tempered float glass

Cell Cast Acrylic (ASTM: PMMA)

Cell cast Acrylic, or Poly-methyl Methacrylic is fabricated by casting acrylic

between two precision sheet of glass. This material has very good optical quality,

but is relatively soft and susceptible to attack by chemicals, mechanical stress

and UV light. It is strongly recommended to have acrylic hard-coated with

Polysiloxane to provide abrasion resistance and protection from environmental

factors. Acrylic can be laser-cut into odd shapes and ultrasonically welded.

Cell Cast ADC, Allyl Diglycol Carbonate (ASTM: ADC)

Also known as CR-39TM, ADC, a thermal setting plastic widely used for plastic

eyeglasses, has excellent chemical and environmental resistance. It also has an

inherently moderate surface hardness and therefore does not require

hard-coating. This material cannot be ultrasonically welded.

Chemically Tempered Float Glass

Glass is a hard material which provides excellent scratch and abrasion

resistance. However, un-annealed glass is brittle. Increased flexibility strength

with minimal optical distortion requires chemical tempering. Glass cannot be

ultrasonically welded and is difficult to cut into odd shapes.

Property Description

Spectral Transmission 85% minimum from 635 to 690 nanometers

Thickness < 1 mm

Coating

Both sides to be anti-reflection coated to provide 1%

maximum reflectivity from 635 to 690 nanometers at

nominal window tilt angle. An anti-reflection coating can

reduce the light that is reflected back to the host case.

Coatings will comply with the hardness adherence

requirements of MIL-M-13508.

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3-4.3-4. WindowWindow SpecificationsSpecifications

Window Specifications for MT10 Integration

Distance Tilt Angle (a)Minimum Window Size

Horizontal (h) Vertical (v) Thickness (t)

< 0.5mm (b) 0 0 18 mm 5.5 mm

< 1 mm10 mm (c) +20°~ -20°~ 32 mm 6 mm

20 mm (c) +17°~ -17°~ 48 mm 6.5 mm

30 mm (c) +15°~ -15°~ 64 mm 7 mm

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The window size must increase as it is moved away fromMT10 and should be

sized to accommodate the field of view and illumination envelopes shown

below:

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3-5.3-5. WindowWindow CareCare

In the aspect of window, the performance of MT10 will be reduced due to any

kind of scratch. Thus, reducing the damage of window, there are few things

have to be noticed.

1. Avoid touching the window as much as possible.

2. When cleaning the window surface, please use non-abrasive cleaning cloth,

and then gently wipe the host window with the cloth that is already sprayed

with glass cleaner.

4.4. REGULATIONSREGULATIONSThe MT10 scan engine conforms to the following regulations:

1. Electromagnetic Compliance – CE EN55022, EN55024

2. Electromagnetic Interference – FCC Part15 Subpart B (Class B)

3. Photobiological Safety – IEC 62471 (Exempt Group)

4. Environmental Regulations – RoHS 2.0, WEEE

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5.5. DEVELOPMENTDEVELOPMENT KITKITMARSON MB100 Demo Kit (P/N: 11A0-9801A20) enables the development of products

and systems using the MT10 on the MS Windows OS platform. Besides the Multi I/O

board (P/N: 2006-1007X00), the MB100 Demo Kit provides the software and hardware

tools required for testing the MT10 applications before integrating it into the host

device. Please contact your sales representative for ordering information.

MB100 Multi I/O Board (P/N: 2006-1007X00)

MB100 Demo Kit Accessories O: Supported X : Not Supported

Interface

Cable

RS232 USB HID USB VCP

External Y-cableo o o

(P/N: 7090-1583A00)

Internal Y-cableo o o

(P/N: 5300-1315X00)

Micro USB Cablex o o

(P/N: 7005-9892A50)

Due to the advantage of its small size, MB100 Multi I/O board is also suitable for being

installed inside the host system, as an interface board connecting MT10 to the host

device.

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6.6. SLEEPSLEEP ((IDLEIDLE)) MODEMODEThe Sleep (Idle) Mode is disabled by default. To enable Sleep (Idle) Mode, simplyfollow below instruction to configure the “Pre-Idle Time”, or the period of inactivitybefore MT10 enters Sleep (Idle) Mode, as appropriate.

A. Standard Mode

Firmware version: SM3-d-x.xx (MT10 P/N: 110P-A000000)

Steps:1. Scan SET MINUTE [.B030$] or SET SECOND [.B029$]2. Scan two digit from the numeric barcode table below.3. Scan SET MINUTE [.B030$] or SET SECOND [.B029$]

Notes:

Pre-Idle Time - Min: 10 sec, Max: 60 min & 60 sec

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B. Command Mode

Firmware version: SM3-d-x.xx.CMD (MT10 P/N: 110P-4000000)

Property Option RemarkSleep (Idle) Mode{MC11WT1}

0 Off1 On

Default : OffWhen enabled, scanner will automatically enterSleep Mode after a period of inactivity(Sleep Modetimeout).

Pre-Idle Time{MC11WT,1,0}

A number from0~60 (Minute)A number from0~60 (Second)

Default : 1 minuteSleep Mode timeout(10 sec ~ 60 min & 60 sec), theperiod of inactivity before the scanner enters SleepMode.

Steps:1. Send {MC11WT1} & {MC11WT,1,0} to the MT10 if you want to enable Sleep (Idle)

Mode and set Pre-Idle Time as 1 minute.2. The MT10 will return {MC11,OK} and {MC11,1,1,0} respectively as confirmation.3. If you want above settings to be saved permanently in Flash ROM, send

{MCMDWT1} to the MT10. Otherwise MT10 will be reset to default after wake upfrom sleep.

Notes:

Curly braces “{ }” must be included at both ends of each command.

7.7. PARAMETERPARAMETER SETUPSETUPYou can set up your MT10 using one of the following methods:

1. Standard Mode (F/W ver.: SM3-d-x.xx):

Scan configuration barcodes from the Universal User’s Manual, or use Ez Utility®,

both of which are available for download at www.marson.com.tw

2. Command Mode (F/W ver.: SM3-d-x.xx.CMD):

Send software commands from the host, or use BEO®, which is available for

download at www.marson.com.tw. Full list of software commands can be found in

the Help File of BEO program, on the chapter Test Window/ Command Operation.

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8.8. VERSIONVERSION HISTORYHISTORYRev. Date Description Issued Checked

1.0 2016.05.09 Preliminary Draft Release Shaw Jou

1.1 2016.05.11 Revised D.O.F Shaw Jou

1.2 2016.07.06Revised Electric & FlexCable Specification

Shaw Jou

1.3 2016.10.31Revised Sleep Modecommand in Chapter 6

Shaw Jou

1.4 2017.06.21Deleted Red Cell-CastAcrylic Description

Shaw Hus

1.5 2018.03.06 Revised P/N on page10&24 Shaw Jou

1.6 2018.03.15

Updated Chapter 1 and 1-1on MCU.Updated Chapter 6 onCommand Mode settings.

Shaw Jou & Hus

Marson Technology Co., Ltd.9F., 108-3, Mincyuan Rd., Sindian Dist., New Taipei City, TaiwanTEL: 886-2-2218-1633FAX: 886-2-2218-6638E-mail: [email protected]: www.marsontech.com